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Physicochemical characterization and study of molar mass of industrial gelatins by AsFlFFF-UV/MALS and chemometric approach

机译:AsFlFFF-UV / MALS和化学计量学方法对工业明胶的理化性质和摩尔质量进行研究

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摘要

Industrial gelatins have different physicochemical properties that mainly depend of the raw materials origin and the extraction conditions. These properties are closely related to the molar mass distribution of these gelatins. Several methods exist to characterize molar mass distribution of polymer, including the Asymmetrical Flow Field Flow Fractionation method. The goal of this study is to analyze the relationship between physicochemical properties and the gelatins molar mass distribution obtained by Asymmetrical Flow Field Flow Fractionation. In this study, 49 gelatins samples extracted from pig skin are characterized in terms of gel strength and viscosity and their molar mass distribution are analyzed by Asymmetrical Flow Field Flow Fractionation coupled to an Ultraviolet and Multi Angle Light Scattering detector. This analytical method is an interesting tool for studying, simultaneously, the primary chains and the high-molar-mass fraction corresponding to the polymer chains. Correlation analysis between molar mass distribution data from the different fractions highlights the importance of high molar mass polymer chains to explain the gel strength and viscosity of gelatins. These results are confirmed by an additional chemometric approach based on the UV absorbance of gelatin fractograms to predict gel strength (r2Cal = 0.85) and viscosity (r2Cal = 0.79).
机译:工业明胶具有不同的物理化学性质,主要取决于原材料的来源和提取条件。这些性质与这些明胶的摩尔质量分布密切相关。存在几种表征聚合物的摩尔质量分布的方法,包括不对称流场流动分馏法。这项研究的目的是分析理化性质与通过不对称流场流动分馏获得的明胶摩尔质量分布之间的关系。在这项研究中,从凝胶中提取的49个明胶样品的凝胶强度和粘度进行了表征,并通过不对称流场流动分馏技术结合紫外和多角度光散射检测器分析了它们的摩尔质量分布。该分析方法是同时研究与聚合物链相对应的主链和高摩尔质量分数的有趣工具。来自不同馏分的摩尔质量分布数据之间的相关分析凸显了高摩尔质量聚合物链对解释明胶的凝胶强度和粘度的重要性。这些结果通过另一种化学计量学方法得到证实,该方法基于明胶分形图的UV吸收来预测凝胶强度(r 2 Cal = 0.85)和粘度(r 2 Cal = 0.79) )。

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